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首页> 外文期刊>NDT & E International: Independent Nondestructive Testing and Evaluation >A nonlinear-guided wave technique for evaluating plasticity-driven material damage in a metal plate
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A nonlinear-guided wave technique for evaluating plasticity-driven material damage in a metal plate

机译:一种非线性导波技术,用于评估金属板中可塑性驱动的材料损伤

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摘要

This research develops an experimental method for evaluating material damage due to plastic deformation in a metal plate using nonlinear-guided waves. An improved version of a previously proposed measurement technique is used. The material nonlinearities of aluminum specimens loaded to produce different levels of plastic strain are measured with Lamb waves. A pair of wedge transducers is used to generate and detect the fundamental (s1) and second harmonic (s2) Lamb waves. The weak amplitude of the second harmonic wave is extracted from the spectrogram of a received signal. The measured acoustic nonlinearity increases monotonically with the level of plasticity (plastic strain), which is similar to the behavior of longitudinal and Rayleigh waves. This result indicates that Lamb waves can be used to assess plasticity-driven material damage in the established framework of the second harmonic generation technique. The effects and the importance of signal processing in determining the nonlinearity parameter are also discussed.
机译:这项研究开发了一种实验方法,该方法使用非线性导波评估由于金属板中的塑性变形引起的材料损伤。使用先前提出的测量技术的改进版本。用兰姆波测量加载产生不同水平的塑性应变的铝样品的材料非线性。一对楔形换能器用于生成和检测基波(s1)和二次谐波(s2)兰姆波。从接收信号的频谱图中提取二次谐波的弱振幅。测得的声学非线性随可塑性水平(塑性应变)单调增加,这与纵向波和瑞利波的行为相似。该结果表明,在二次谐波生成技术已建立的框架中,兰姆波可用于评估可塑性驱动的材料损伤。还讨论了信号处理在确定非线性参数中的作用和重要性。

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